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Formation, detection, and stability studies of neutral vanadium sulfide clusters

机译:中性硫化钒团簇的形成,检测和稳定性研究

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Neutral vanadium sulfide clusters are generated by the reaction of seeded hydrogen sulfide in a helium carrier gas with laser ablated vanadium metal within a supersonic nozzle. The exiting clusters are expanded into a vacuum in a molecular beam and are ionized by both ultraviolet (UV) and vacuum UV (VUV) laser radiation. The generated ions are detected by a time of flight mass spectrometer. With single photon ionization (SPI) employing VUV (118 nm) radiation, sulfur rich clusters (VmSn, n>m+1) and hydrogen containing clusters (VmSnHx, x>0) are observed. With multiphoton ionization (MPI) through nanosecond UV (193 nm) radiation, these sulfur rich and hydrogen containing clusters cannot be observed, indicating severe fragmentation generated by MPI and the importance of SPI in determining the neutral vanadium sulfide cluster distribution. With MPI through femtosecond UV (226 nm) radiation, a few sulfur rich and hydrogen containing clusters are detected, but most clusters observed by SPI are still undetected even by femtosecond MPI. Density functional theory calculations are applied to optimize energies and structures of the clusters with m=1-3 and n=0-7. The experimental results are well interpreted based on the calculations. The calculated and experimental results for vanadium sulfides are compared with those of vanadium oxides in literature. (C) 2007 American Institute of Physics.
机译:中性硫化钒簇是由氦载气中的晶种硫化氢与超声喷嘴内的激光烧蚀钒金属反应生成的。离开的簇在分子束中膨胀成真空,并被紫外(UV)和真空UV(VUV)激光辐射电离。所产生的离子由飞行时间质谱仪检测。通过采用VUV(118 nm)辐射的单光子电离(SPI),可以观察到富硫簇(VmSn,n> m + 1)和含氢簇(VmSnHx,x> 0)。通过纳秒紫外线(193 nm)辐射进行的多光子电离(MPI),无法观察到这些富含硫和氢的簇,这表明MPI产生了严重的碎片,并且SPI在确定中性硫化钒簇分布中的重要性。通过飞秒UV(226 nm)辐射进行MPI检测,可以检测到一些富硫和含氢簇,但是即使是飞秒MPI也无法检测到SPI观察到的大多数簇。应用密度泛函理论计算来优化m = 1-3和n = 0-7的团簇的能量和结构。根据计算结果可以很好地解释实验结果。在文献中将硫化钒的计算和实验结果与氧化钒进行了比较。 (C)2007美国物理研究所。

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